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  1. Martin Heidegger and Modern Models of the Growth of Knowledge.Rinat Nugayev & Tanzilia Burganova - 2016 - Lambert Academic Publishing.
    Modern generally accepted models of the growth of knowledge are scrutinized. It is maintained that Thomas Kuhn’s growth of knowledge model is grounded preeminently on Heidegger’s epistemology. To justify the tenet the corresponding works of both thinkers are considered. As a result, the one-to-one correspondence between the key propositions of Heideggerian epistemology and the basic tenets of Kuhn’s growth of knowledge model is elicited. The tenets under consideration include the holistic nature of a paradigm, the incommensurability thesis, conventional status of (...)
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  • Against Putting the Phenomena First: the Discovery of the Weak Neutral Current.Andy Pickering - 1984 - Studies in History and Philosophy of Science Part A 15 (2):85.
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  • Idealization in Quantum Field Theory.Stephan Hartmann - 1990 - In Niall Shanks (ed.), Idealization in Contemporary Physics. pp. 99-122.
    This paper explores various functions of idealizations in quantum field theory. To this end it is important to first distinguish between different kinds of theories and models of or inspired by quantum field theory. Idealizations have pragmatic and cognitive functions. Analyzing a case-study from hadron physics, I demonstrate the virtues of studying highly idealized models for exploring the features of theories with an extremely rich structure such as quantum field theory and for gaining some understanding of the physical processes in (...)
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  • Bohm's metaphors, causality, and the quantum potential.Marcello Guarini - 2003 - Erkenntnis 59 (1):77 - 95.
    David Bohm's interpretation of quantum mechanics yields a quantum potential, Q. In his early work, the effects of Q are understood in causal terms as acting through a real (quantum) field which pushes particles around. In his later work (with Basil Hiley), the causal understanding of Q appears to have been abandoned. The purpose of this paper is to understand how the use of certain metaphors leads Bohm away from a causal treatment of Q, and to evaluate the use of (...)
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  • On a unified theory of models and thought experiments in natural sciences.Giovanni Boniolo - 1997 - International Studies in the Philosophy of Science 11 (2):121 – 142.
    In this paper a unified theory of models and thought experiments is proposed by considering them as fictions, la Vaihinger. In order to reach this aim, the Hertzian and Botzmannian interpretation of theories as Bilder is reconsidered.
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  • Minimal length in quantum gravity and the fate of Lorentz invariance.Amit Hagar - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (3):259-267.
    Loop quantum gravity predicts that spatial geometry is fundamentally discrete. Whether this discreteness entails a departure from exact Lorentz symmetry is a matter of dispute that has generated an interesting methodological dilemma. On one hand one would like the theory to agree with current experiments, but, so far, tests in the highest energies we can manage show no such sign of departure. On the other hand one would like the theory to yield testable predictions, and deformations of exact Lorentz symmetry (...)
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  • Heuristic appraisal: A proposal.Thomas Nickles - 1989 - Social Epistemology 3 (3):175 – 188.
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  • (2 other versions)Simplicity and Observability: When are Particles Elementary?Kostas Gavroglu - 1988 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988 (1):89-100.
    Writing the history of elementary particle physics has all the problems common to writing the history of any other subject “in the making”. There is, however, an additional characteristic, unique to this branch of physics. The development of particle physics, unlike the situation in other branches of physics, reveals a continuously changing picture of what its object of investigation is, of what, in other words, the things we call particles are and how elementary they should be considered. The history of (...)
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  • A response.James T. Cushing - 1982 - Synthese 50 (1):109 - 123.
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  • Is scientific methodology interestingly atemporal?James T. Cushing - 1990 - British Journal for the Philosophy of Science 41 (2):177-194.
    Any division between scientific practice and a metalevel of the methods and goals of science is largely a false dichotomy. Since a priori, foundationist or logicist approaches to normative principles have proven unequal to the task of representing actual scientific practice, methodologies of science must be abstracted from episodes in the history of science. Of course, it is possible that such characteristics could prove universal and constant across various eras. But, case studies show that they are not in anything beyond (...)
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  • Spacetime or Quantum Particles: The Ontology of Quantum Gravity?Peter James Riggs - 1996 - In Peter J. Riggs (ed.), Natural Kinds, Laws of Nature and Scientific Methodology. Kluwer Academic Publishers. pp. 211--226.
    The domains of quantum theory and general relativity overlap in situations where quantum mechanical effects cannot be ignored. In order to deal with this overlap of theoretical domains, there has been a tendency to apply the rules of quantum field theory to the classical gravitational field equations and without much regard for the implications of the whole enterprise. The gravitational version of the asymmetric ageing of identical biological specimens shows that curved spacetime is not dispensable. This result is used to (...)
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  • The Importance of Heisenberg's S-Matrix Program for the Theoretical High-Energy Physics of the 1950's.James T. Cushing - 1986 - Centaurus 29 (2):110-149.
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  • Racionalidade, consistência, reticulação e coerência: o caso da renormalização na teoria quântica do campo.Valter Alnis Bezerra - 2003 - Scientiae Studia 1 (2):151-181.
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  • Quantum theory and explanatory discourse: Endgame for understanding?James T. Cushing - 1991 - Philosophy of Science 58 (3):337-358.
    Empirical adequacy, formal explanation and understanding are distinct goals of science. While no a priori criterion for understanding should be laid down, there may be inherent limitations on the way we are able to understand explanations of physical phenomena. I examine several recent contributions to the exercise of fashioning an explanatory discourse to mold the formal explanation provided by quantum mechanics to our modes of understanding. The question is whether we are capable of truly understanding (or comprehending) quantum phenomena, as (...)
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  • The truth of scientific claims.Edward MacKinnon - 1982 - Philosophy of Science 49 (3):437-462.
    The idea that science aspires to and routinely achieves truths about the world has been challenged in recent writings. Rather than beginning with a theory of scientific development, or of scientific explanation, we begin with a consideration of truth claims in ordinary discourse, particularly with Davidson's truth-functional semantics. Next we consider the way in which some framework features of ordinary language discourse are extended to and modified in scientific discourse. Two areas are treated in more detail: quantum theory, and the (...)
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  • (1 other version)Independence from Future Theories: A Research Strategy in Quantum Theory.Alexander Rueger - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):202-211.
    Renormalization in Quantum Field Theory (QFT) has frequently been regarded, by philosophers as well as by scientists, as an exemplary case of bad methodological behavior. The feeling that renormalization was somehow an illegitimate way to extract results, an ad hoc maneuver without an independent rationale, was (and is) common among physicists and philosophers, who wonder, at the same time, about the unprecedented accuracy of the empirical results achieved by the illegitimate method. Teller (1989) has recently tried to dispel the air (...)
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  • Analogical reasoning and modeling in the sciences.Paulo Abrantes - 1999 - Foundations of Science 4 (3):237-270.
    This paper aims at integrating the work onanalogical reasoning in Cognitive Science into thelong trend of philosophical interest, in this century,in analogical reasoning as a basis for scientificmodeling. In the first part of the paper, threesimulations of analogical reasoning, proposed incognitive science, are presented: Gentner''s StructureMatching Engine, Mitchel''s and Hofstadter''s COPYCATand the Analogical Constraint Mapping Engine, proposedby Holyoak and Thagard. The differences andcontroversial points in these simulations arehighlighted in order to make explicit theirpresuppositions concerning the nature of analogicalreasoning. In the (...)
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  • Discovery Logics.Thomas Nickles - 1990 - Philosophica 45 (1):7-32.
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  • Scientific change: Philosophical models and historical research.Larry Laudan, Arthur Donovan, Rachel Laudan, Peter Barker, Harold Brown, Jarrett Leplin, Paul Thagard & Steve Wykstra - 1986 - Synthese 69 (2):141 - 223.
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  • (1 other version)Critical Notice.John Woods - 1989 - Canadian Journal of Philosophy 19 (4):617-659.
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  • The reggeization program 1962–1982: Attempts at reconciling quantum field theory with S-matrix theory.Tian Yu Cao - 1991 - Archive for History of Exact Sciences 41 (3):239-283.
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  • Is There just One Possible World? Contingency vs the Bootstrap.James T. Cushing - 1985 - Studies in History and Philosophy of Science Part A 16 (1):31.
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  • Theories, Models and Constraints.Friedel Weinert - 1999 - Studies in History and Philosophy of Science Part A 30 (2):303-333.
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  • The justification and selection of scientific theories.James T. Cushing - 1989 - Synthese 78 (1):1 - 24.
    This paper is a critique of a project, outlined by Laudan et al. (1986) recently in this journal, for empirically testing philosophical models of change in science by comparing them against the historical record of actual scientific practice. While the basic idea of testing such models of change in the arena of science is itself an appealing one, serious questions can be raised about the suitability of seeking confirmation or disconfirmation for large numbers of specific theses drawn from a massive (...)
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  • Quantum Mechanics and Reality: An Interpretation of Everett's Theory.Christoph Albert Lehner - 1997 - Dissertation, Stanford University
    The central part of Everett's formulation of quantum mechanics is a quantum mechanical model of memory and of observation as the recording of information in a memory. To use this model as an answer to the measurement problem, Everett has to assume that a conscious observer can be in a superposition of such memory states and be unaware of it. This assumption has puzzled generations of readers. ;The fundamental aim of this dissertation is to find a set of simpler assumptions (...)
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  • Quantum field theories and aesthetic disparity.Gideon Engler - 2001 - International Studies in the Philosophy of Science 15 (1):51 – 63.
    The theoretical physicist Paul Dirac rejected, explicitly on aesthetic grounds, a successful theory known as quantum electrodynamics (QED), which is the prototype for the family of theories known as quantum field theories (QFTs). Remarkably, the theoretical physicist Steven Weinberg, also largely on aesthetic grounds, supports QED and other QFTs. In order to evaluate these opposing aesthetic views a short introduction to the physical properties of QFTs is presented together with a detailed analysis of the aesthetic claims of Dirac and Weinberg. (...)
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  • Estruturas conceituais e estratégias de investigação: modelos representacionais e instanciais, analogias e correspondência.Valter Alnis Bezerra - 2011 - Scientiae Studia 9 (3):585-609.
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  • (2 other versions)Simplicity and observability: When are particles elementary?Kostas Gavroglu - 1989 - Synthese 79 (3):89 - 100.
    It is not possible to dismiss the atomistic paradigm because the proposed elementary particles are too many (and, hence, it is claimed, they do not provide a simple account of nature) or because it is not possible to observe quarks in an isolated manner. The developments in particle physics have brought about radical changes to our notions of simplicity and observability, and in this paper we elaborate on these changes. It is as a result of these changes that the present (...)
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